X-Git-Url: http://shamusworld.gotdns.org/cgi-bin/gitweb.cgi?a=blobdiff_plain;f=src%2Fpainter.cpp;h=35528faf9887ce5930306cb6f6d2c26465392c9a;hb=84afe881653a02a16b19d4da37435b8701b1a826;hp=7d146b1888cdfb3d5b430cf0c2e269860e4c2aee;hpb=ba6723b86d8dd67ebc7b11b245de3e7ff64f06b1;p=architektonas diff --git a/src/painter.cpp b/src/painter.cpp index 7d146b1..35528fa 100644 --- a/src/painter.cpp +++ b/src/painter.cpp @@ -13,14 +13,14 @@ // #include "painter.h" - +#include "global.h" #include "mathconstants.h" // Set class variable defaults -Vector Painter::origin(-10.0, -10.0); -double Painter::zoom = 1.0; -Vector Painter::screenSize(200.0, 200.0); +//Vector Painter::origin(-10.0, -10.0); +//double Painter::zoom = 1.0; +//Vector Painter::screenSize(200.0, 200.0); Painter::Painter(QPainter * p/*= NULL*/): painter(p) @@ -37,7 +37,7 @@ Vector Painter::CartesianToQtCoords(Vector v) { // Convert regular Cartesian coordinates to the inverted Y-axis Qt coordinates // at the current origin and zoom level. - return Vector((v.x - origin.x) * zoom, screenSize.y - ((v.y - origin.y) * zoom)); + return Vector((v.x - Global::origin.x) * Global::zoom, Global::screenSize.y - ((v.y - Global::origin.y) * Global::zoom)); } @@ -45,7 +45,7 @@ Vector Painter::QtToCartesianCoords(Vector v) { // Convert screen location, with inverted Y-axis coordinates, to regular // Cartesian coordinates at the current zoom level. - return Vector((v.x / zoom) + origin.x, ((screenSize.y - v.y) / zoom) + origin.y); + return Vector((v.x / Global::zoom) + Global::origin.x, ((Global::screenSize.y - v.y) / Global::zoom) + Global::origin.y); /* How to do it: @@ -106,7 +106,7 @@ void Painter::SetPen(QPen pen) } -void Painter::DrawAngledText(Vector center, double angle, QString text) +void Painter::DrawAngledText(Vector center, double angle, QString text, double size) { if (!painter) return; @@ -119,29 +119,22 @@ void Painter::DrawAngledText(Vector center, double angle, QString text) // We may need this stuff... If dimension text is large enough. // int textWidth = QFontMetrics(painter->font()).width(text); // int textHeight = QFontMetrics(painter->font()).height(); -// NOTE: SCREEN_ZOOM is a kludge to make things look right at screen resolution... - QRectF textBox(-100.0 * zoom * SCREEN_ZOOM, -100.0 * zoom * SCREEN_ZOOM, 200.0 * zoom * SCREEN_ZOOM, 200.0 * zoom * SCREEN_ZOOM); // x, y, w, h; x/y = upper left corner + QRectF textBox(-100.0 * Global::zoom * size, -100.0 * Global::zoom * size, 200.0 * Global::zoom * size, 200.0 * Global::zoom * size); // x, y, w, h; x/y = upper left corner // This is in pixels. Might not render correctly at all zoom levels. - // Need to figure out if dimensions are always rendered at one size regardless of zoom, - // or if they have a definite size, and are thus zoomable. - // If zoomable, this is incorrect: - // (Added zoom, so this is correct now :-) - float yOffset = -12.0 * zoom * SCREEN_ZOOM; + // Need to figure out if dimensions are always rendered at one size + // regardless of zoom, or if they have a definite size, and are thus + // zoomable. + float yOffset = -12.0 * Global::zoom * size; // Fix text so it isn't upside down... if ((angle > PI * 0.5) && (angle < PI * 1.5)) { angle += PI; - yOffset = 12.0 * zoom * SCREEN_ZOOM; + yOffset = 12.0 * Global::zoom * size; } -#if 0 - Vector offset = CartesianToQtCoords(Vector(0, yOffset)); - textBox.translate(offset.x, offset.y); -#else textBox.translate(0, yOffset); -#endif painter->save(); painter->translate(center.x, center.y); // Angles are backwards in the Qt coord system, so we flip ours... @@ -156,7 +149,7 @@ void Painter::DrawArc(Vector center, double radius, double startAngle, double sp { center = CartesianToQtCoords(center); // Need to multiply scalar quantities by the zoom factor as well... - radius *= zoom; + radius *= Global::zoom; QRectF rectangle(QPointF(center.x - radius, center.y - radius), QPointF(center.x + radius, center.y + radius)); int angle1 = (int)(startAngle * RADIANS_TO_DEGREES * 16.0); @@ -169,7 +162,7 @@ void Painter::DrawEllipse(Vector center, double axis1, double axis2) { // Need to multiply scalar quantities by the zoom factor as well... center = CartesianToQtCoords(center); - painter->drawEllipse(QPointF(center.x, center.y), axis1 * zoom, axis2 * zoom); + painter->drawEllipse(QPointF(center.x, center.y), axis1 * Global::zoom, axis2 * Global::zoom); } @@ -183,6 +176,53 @@ void Painter::DrawHandle(Vector center) } +// This function is for drawing object handles without regard for zoom level; +// we don't want our object handle size to depend on the zoom level! +void Painter::DrawArrowHandle(Vector center, double angle) +{ + center = CartesianToQtCoords(center); + QPolygonF arrow; + + // Since we're drawing directly on the screen, the Y is inverted. So we use + // the mirror of the angle. + double orthoAngle = -angle + (PI / 2.0); + Vector orthogonal = Vector(cos(orthoAngle), sin(orthoAngle)); + Vector unit = Vector(cos(-angle), sin(-angle)); + + Point p0 = center + (unit * 6.0); + Point p1 = center + (unit * 21.0); + Point p1b = center + (unit * 11.0); + Point p2 = p1b + (orthogonal * 5.0); + Point p3 = p1b - (orthogonal * 5.0); + + painter->drawLine(p0.x, p0.y, p1.x, p1.y); + arrow << QPointF(p1.x, p1.y) << QPointF(p2.x, p2.y) << QPointF(p3.x, p3.y); + + painter->drawPolygon(arrow); +} + + +// This function is for drawing object handles without regard for zoom level; +// we don't want our object handle size to depend on the zoom level! +void Painter::DrawArrowToLineHandle(Vector center, double angle) +{ + DrawArrowHandle(center, angle); + center = CartesianToQtCoords(center); + + // Since we're drawing directly on the screen, the Y is inverted. So we use + // the mirror of the angle. + double orthoAngle = -angle + (PI / 2.0); + Vector orthogonal = Vector(cos(orthoAngle), sin(orthoAngle)); + Vector unit = Vector(cos(-angle), sin(-angle)); + + Point p1 = center + (unit * 21.0); + Point p2 = p1 + (orthogonal * 7.0); + Point p3 = p1 - (orthogonal * 7.0); + + painter->drawLine(p2.x, p2.y, p3.x, p3.y); +} + + void Painter::DrawLine(int x1, int y1, int x2, int y2) { if (!painter) @@ -215,6 +255,7 @@ void Painter::DrawPoint(int x, int y) } +// The rect passed in is in Qt coordinates... void Painter::DrawRoundedRect(QRectF rect, double radiusX, double radiusY) { if (!painter) @@ -224,6 +265,21 @@ void Painter::DrawRoundedRect(QRectF rect, double radiusX, double radiusY) } +// The rect passed in is in Cartesian but we want to pad it by a set number of +// pixels (currently set at 8), so the pad looks the same regardless of zoom. +void Painter::DrawPaddedRect(QRectF rect) +{ + if (!painter) + return; + + Vector v1 = CartesianToQtCoords(Vector(rect.x(), rect.y())); + Vector v2 = CartesianToQtCoords(Vector(rect.right(), rect.bottom())); + QRectF screenRect(QPointF(v1.x, v1.y), QPointF(v2.x, v2.y)); + screenRect.adjust(-8, 8, 8, -8); // Left/top, right/bottom + painter->drawRect(screenRect); +} + + void Painter::DrawRect(QRectF rect) { if (!painter) @@ -245,8 +301,11 @@ void Painter::DrawText(QRectF rect, int type, QString text) } -void Painter::DrawArrowhead(Vector head, Vector tail) +void Painter::DrawArrowhead(Vector head, Vector tail, double size) { + if (!painter) + return; + QPolygonF arrow; // We draw the arrowhead aligned along the line from tail to head @@ -255,10 +314,9 @@ void Painter::DrawArrowhead(Vector head, Vector tail) Vector orthogonal = Vector(cos(orthoAngle), sin(orthoAngle)); Vector unit = Vector(head - tail).Unit(); -// NOTE: SCREEN_ZOOM is a kludge to make things look right at scale... - Point p1 = head - (unit * 9.0 * SCREEN_ZOOM); - Point p2 = p1 + (orthogonal * 3.0 * SCREEN_ZOOM); - Point p3 = p1 - (orthogonal * 3.0 * SCREEN_ZOOM); + Point p1 = head - (unit * 9.0 * size); + Point p2 = p1 + (orthogonal * 3.0 * size); + Point p3 = p1 - (orthogonal * 3.0 * size); Point p4 = CartesianToQtCoords(head); Point p5 = CartesianToQtCoords(p2); @@ -269,3 +327,34 @@ void Painter::DrawArrowhead(Vector head, Vector tail) painter->drawPolygon(arrow); } + +// Point is given in Cartesian coordinates +void Painter::DrawCrosshair(Vector point) +{ + if (!painter) + return; + + Vector screenPoint = CartesianToQtCoords(point); + painter->drawLine(0, screenPoint.y, Global::screenSize.x, screenPoint.y); + painter->drawLine(screenPoint.x, 0, screenPoint.x, Global::screenSize.y); +} + + +void Painter::DrawInformativeText(QString text) +{ + painter->setFont(*Global::font); + QRectF bounds = painter->boundingRect(QRectF(), Qt::AlignVCenter, text); + bounds.moveTo(17.0, 17.0); + QRectF textRect = bounds; + textRect.adjust(-7.0, -7.0, 7.0, 7.0); + + QPen pen = QPen(QColor(0x00, 0xFF, 0x00), 1.0, Qt::SolidLine); + painter->setPen(pen); + painter->setBrush(QBrush(QColor(0x40, 0xFF, 0x40, 0x9F))); + painter->drawRoundedRect(textRect, 7.0, 7.0); + + pen = QPen(QColor(0x00, 0x5F, 0xDF)); + painter->setPen(pen); + painter->drawText(bounds, Qt::AlignVCenter, text); +} +